EMD-21387

Single-particle
3.5 Å
EMD-21387 Deposition: 14/02/2020
Map released: 18/03/2020
Last modified: 13/11/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-21387

Structure of G-alpha-q bound to its chaperone Ric-8A

EMD-21387

Single-particle
3.5 Å
EMD-21387 Deposition: 14/02/2020
Map released: 18/03/2020
Last modified: 13/11/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Rattus norvegicus, Homo sapiens
Sample: Complex of Ric-8A with G alpha q
Fitted models: 6vu5 (Avg. Q-score: 0.454)

Deposition Authors: Seven AB, Hilger D
Structures of G alpha Proteins in Complex with Their Chaperone Reveal Quality Control Mechanisms.
Seven AB, Hilger D, Papasergi-Scott MM , Zhang L, Qu Q, Kobilka BK , Tall GG, Skiniotis G
(2020) Cell Rep , 30 , 3699 - 3709.e6
PUBMED: 32126208
DOI: doi:10.1016/j.celrep.2020.02.086
ISSN: 2211-1247
Abstract:
Many chaperones promote nascent polypeptide folding followed by substrate release through ATP-dependent conformational changes. Here we show cryoEM structures of Gα subunit folding intermediates in complex with full-length Ric-8A, a unique chaperone-client system in which substrate release is facilitated by guanine nucleotide binding to the client G protein. The structures of Ric-8A-Gαi and Ric-8A-Gαq complexes reveal that the chaperone employs its extended C-terminal region to cradle the Ras-like domain of Gα, positioning the Ras core in contact with the Ric-8A core while engaging its switch2 nucleotide binding region. The C-terminal α5 helix of Gα is held away from the Ras-like domain through Ric-8A core domain interactions, which critically depend on recognition of the Gα C terminus by the chaperone. The structures, complemented with biochemical and cellular chaperoning data, support a folding quality control mechanism that ensures proper formation of the C-terminal α5 helix before allowing GTP-gated release of Gα from Ric-8A.